首页> 外文会议>SPE/AAPG Eastern Regional Meeting >Multiple Enhanced Mechanical Property Cements Help Prevent Pre-and Post-Fracturing Gas Migration
【24h】

Multiple Enhanced Mechanical Property Cements Help Prevent Pre-and Post-Fracturing Gas Migration

机译:多种增强的机械性能水泥有助于防止前压裂后气体迁移

获取原文

摘要

"Gas migration" has been the catch phrase of the Appalachian Basin in the northeastern part of the US for years.As demonstrated in a previous study,optimal displacement efficiency can be obtained by rotating casing during the entirety of the cement operation,providing uniform cement coverage and eliminating gas migration.However,while horizontal well lengths continue to increase,the ability to maintain rotation for the entirety of the cement operation can be severely inhibited.Conventional cement slurries are satisfactory for the majority of wells in both the Marcellus and Utica/Point Pleasant.However,while operators are pushing the limit toward a 20,000-ft measured depth,there is a growing need to rely less on industry best practices written at the onset of shale drilling and expand engineering creativity toward implementing new technologies.With rotation off the table,a service company recommended the combined use of two highly enhanced mechanical property cement slurry technologies to bridge the technology gap from a conventional cementing solution to a more "life of the well" solution.Historically,gas migration from either the Upper Devonian and/or the Marcellus Shale has been proven to be troublesome for the northeastern part of Pennsylvania.When the challenge cannot be addressed with historical best practices,deploying new technology on hand is necessary to achieve the goal.With the more robust functionality of a low-Portland cement design and resin composite cement slurry,the service company's design team was able to combine these two technologies to deliver a dependable barrier tailored to achieve zonal isolation.Optimizing the placement of the resin-composite-based cement slurry itself was pivotal; placement across the problem zones and above the landing point of the horizontal section was necessary.Successful elimination of both pre-and post-fracturing gas migration was achieved without casing rotation during cement slurry placement.The wells were put into production,and the operator has not had to perform any costly remediation operations because the reservoir was properly isolated by means of the primary cementing operation.Enhanced mechanical property cements were proven to be vital for alleviating the concerns of gas migration.These cement systems help prevent Upper Devonian and Marcellus wells from being reworked because of primary cement quality post-completion.
机译:“天然气迁移”一直是美国东北部门的阿巴拉契亚盆地的短语。在以前的研究中证明,通过在整个水泥操作期间旋转壳体可以获得最佳位移效率,提供均匀的水泥覆盖率和消除气体迁移。但是,在水平井长度继续增加时,可以严重抑制维持整个水泥操作旋转的能力。在Marcellus和Utica两种井中的大多数井中都是令人满意的,而且可以抑制旋转的能力。无论何时,运营商正在推动20,000英尺的测量深度,虽然朝着20,000英尺的深度,但越来越需要依赖于页岩钻探发病的行业最佳实践,并扩大工程创造力朝着实施新技术。旋转该表,服务公司建议结合两种高度增强的机械性能水泥浆料技术从传统的固井解决方案桥接技术差距,以“井”解决方案的更多“寿命”。凭借从上部侦探和/或Marcellus Shale的气体迁移被证明是宾夕法尼亚州东北部的麻烦。挑战无法通过历史最佳实践来解决,在手头上部署新技术是实现目标所必需的。在低舷窗水泥设计和树脂复合水泥浆料的强大功能,服务公司的设计团队能够结合这些提供可靠屏障量身定制的两种技术以实现区域隔离。优化树脂复合材料的水泥浆料本身的位置是关痛的;在解决问题区域的放置和上方的水平部分的着陆点是必要的。在水泥浆料放置期间没有壳体旋转,实现了预先裂纹的气体迁移的粘度消除。井投入生产,操作员不得不执行任何昂贵的修复行动,因为储层通过主要胶结作用适当地分离。被证明是为了减轻气体迁移的关注值为育种力学性质水泥。这些水泥系统有助于防止上侦探和马塞尔斯井因完成后的主要水泥质量而被重新加工。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号